Centre for Biomolecular Interactions Bremen, University of Bremen, Bremen, Germany.
Acta Biomater. 2012 Oct;8(10):3832-9. doi: 10.1016/j.actbio.2012.06.029. Epub 2012 Jun 28.
To investigate the cellular consequences of a prolonged cellular presence of large amounts of iron oxide nanoparticles (IONPs) as well as the fate of such particles in brain cells, cultured primary astrocytes were loaded for 4h with dimercaptosuccinate-coated IONPs. Subsequently, the IONP-treated cells were incubated for up to 7 days in IONP-free medium and the cell viability, metabolic parameters and iron metabolism of the cells were investigated. Despite an up to 100-fold elevated specific cellular iron content, IONP-loaded cells remained viable throughout the 7 day main incubation and did not show any substantial alteration in glucose and glutathione metabolism. During the incubation, the high cellular iron content of IONP-loaded astrocytes remained almost constant. Electron microscopy revealed that after 7 days of incubation most of the cellular iron was still present in IONP-filled vesicles. However, the transient appearance of reactive oxygen species (ROS) as well as a strong increase in cellular levels of the iron storage protein ferritin suggest that at least some low-molecular-weight iron was liberated from the accumulated IONPs. These results demonstrate that even the prolonged presence of large amounts of accumulated IONPs does not harm astrocytes and that these cells store IONP-derived iron in ferritin.
为了研究大量氧化铁纳米粒子(IONPs)长时间存在于细胞内所产生的细胞后果,以及这些粒子在脑细胞中的命运,我们用二巯丁二酸(DMSA)包裹的 IONPs 对培养的原代星形胶质细胞进行了 4 小时的负载。随后,将 IONP 处理过的细胞在无 IONP 的培养基中孵育长达 7 天,并研究了细胞活力、代谢参数和铁代谢。尽管细胞内铁的特异性含量增加了 100 倍,但 IONP 负载的细胞在整个 7 天的主要孵育过程中仍然保持存活,并且葡萄糖和谷胱甘肽代谢没有发生任何实质性变化。在孵育过程中,IONP 负载的星形胶质细胞的高细胞内铁含量几乎保持不变。电子显微镜显示,孵育 7 天后,细胞内的大部分铁仍存在于充满 IONP 的小泡中。然而,活性氧(ROS)的短暂出现以及铁储存蛋白 ferritin 的细胞内水平的强烈增加表明,至少一些低分子量的铁已从积累的 IONP 中释放出来。这些结果表明,即使长时间存在大量积累的 IONP 也不会损害星形胶质细胞,并且这些细胞将 IONP 衍生的铁储存在 ferritin 中。